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Characterization of the Tomato Prosystemin Promoter:Organ-specific Expression,Hormone Specificity and Methyl Jasmonate Responsiveness by Deletion Analysis in Transgenic Tobacco Plants 被引量:3
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作者 Hamlet Avilés-Arnaut John Paul Délano-Frier 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2012年第1期15-32,共18页
Tomato systemin is a bioactive peptide that regulates the systemic activation of wound-responsive genes. It is released from its 200 amino acid precursor called prosystemin. Initial tissue-localization and hormone-ind... Tomato systemin is a bioactive peptide that regulates the systemic activation of wound-responsive genes. It is released from its 200 amino acid precursor called prosystemin. Initial tissue-localization and hormone-induced expression assays indicated that the tomato prosystemin gene (SIPS) accumulates mainly in floral tissues and in response to exogenous abscisic acid and methyl jasmonate (MeJA) treatments, respectively. Later, the promoter regions of the PS gene in tomato (Solanum lycopersicum L. cv. Castlemart), pepper (Capsicum annuum) and potato (Solanum tuberosum) were isolated and an in silico analysis of the SIPS promoter revealed an over-representation of stress- and MeJA-responsive motifs. A subsequent 5' deletion analysis of the SIPS promoter fused to the/^-glucuronidase reporter (GUS) gene showed that the -221 to +40 bp proximal SIPS promoter region was sufficient to direct the stigma, vascular bundle-specific and MeJA-responsive expression of GUS in transgenic tobacco plants. Important vascular.tissue-specific, light- and MeJA-responsive cis-elements were also present in this region. These findings provide relevant information regarding the transcriptional regulation mechanisms of the SIPS promoter operating in transgenic tobacco plants. They also suggest that its Ussue-specificity and inducible nature could have wide applicability in plant biotechnology. 展开更多
关键词 cis-regulatory elements flower specific jasmonic acid methyl jasmonate promoter analysis prosystemin wound-responsive genes.
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植物的伤卫信号分子——系统素
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作者 刘福春 霍玉琴 《安徽农业科学》 CAS 2012年第7期3856-3857,共2页
综述了植物体内信号分子系统素(STM)的分子结构、生物活性、生理功能及其作用机理。
关键词 系统素 系统素原 茉莉酸 伤卫信号分子
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植物周身素研究进展
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作者 白嵩 靳占忠 白宝璋 《张家口农专学报》 2003年第3期1-3,17,共4页
综述了作为植物体内信号分子的周身素(STM)的分子结构、生物活性、生理功能及其作用机理.
关键词 植物激素 信号分子 分子结构 生物活性 生理功能 作用机理 生长素 赤霉素 细胞分裂素
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地上部特异性启动子驱动番茄原系统素表达的载体构建及转基因植株的获得
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作者 赵雪芹 刘维仲 +1 位作者 蒋红玲 张海燕 《植物研究》 CAS CSCD 北大核心 2011年第3期318-322,共5页
克隆地上部特异表达的启动子——cab2(chlorophyll a/b binding protein 2,cab2)基因的启动子,构建该启动子驱动下的番茄原系统素(Prosystemin;PS)与GFP融合的植物表达载体并获得转基因植株。利用农杆菌介导法转化拟南芥,通过RT-PCR的... 克隆地上部特异表达的启动子——cab2(chlorophyll a/b binding protein 2,cab2)基因的启动子,构建该启动子驱动下的番茄原系统素(Prosystemin;PS)与GFP融合的植物表达载体并获得转基因植株。利用农杆菌介导法转化拟南芥,通过RT-PCR的方法及激光共聚焦显微镜观察启动子驱动PS-GFP的表达及其亚细胞定位。以拟南芥基因组为模板,利用高保真聚合酶获得了cab2启动子的目的片段,并将其与接GFP的番茄原系统素载体(SlPS)融合,激光共聚焦显微镜观察表明,该启动子驱动的基因正常表达和并定位于细胞质中。克隆获得到了cab2基因的启动子,该启动子能够驱动番茄原系统素和GFP的融合蛋白正常表达和定位。 展开更多
关键词 拟南芥 cab2 地上部特异性启动子 系统素
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